By using the convective and viscous force equations at the boundary layer for a cylindrical flow you can predict the convective flow conditions at the boundary layer by finding the dimensionless Reynolds Number ( N _ R ).
32.
To make clear that the algorithm is really just an operator splitting approach in which one considers the viscous forces ( in the first half step ) and the pressure forces ( in the second half step ) separately.
33.
Taking a cue from the boundary layer momentum balance equations, the second derivative boundary layer moments, { \ lambda _ n } track the thickness and shape of that portion of the boundary layer where the viscous forces are significant.
34.
For low capillary numbers ( a rule of thumb says less than 10 " 5 ), flow in porous media is dominated by capillary forces whereas for high capillary number the capillary forces are negligible compared to the viscous forces.
35.
The high airspeed around the trailing edge causes strong viscous forces to act on the air adjacent to the trailing edge of the airfoil and the result is that a strong vortex accumulates on the topside of the airfoil, near the trailing edge.
36.
The fluid dynamics of home chocolate fountains are particularly problematic ( it is a so-called non Newtonian fluid ), since the gravitational forces are much lower than the viscous forces; this means that small chocolate fountains need a very high proportion of vegetable oil.
37.
The kinetic energy must " cascade " from these large scales to progressively smaller scales until a level is reached for which the scale is small enough for viscosity to become important ( that is, viscous forces become of the order of inertial ones ).
38.
At low angles of attack the airflow through the slot is insignificant, although it contributes to viscous force ) is very high and the boundary layer arriving at the slot on the upper wing has lost much of its total pressure ( or total mechanical energy ) due to this friction.
39.
In the case of a system which is not rotating uniformly, such as the case of cylindrical Couette flow, where the outer cylinder is stationary and the inner cylinder is rotating, inertial forces will often tend to destabilize a system, whereas viscous forces tend to stabilize a system and damp out perturbations and turbulence.
40.
The field exists as a well of energy permeating all of space and interacting by a sort of frictional or viscous force with particles; the greater the friction experienced by a given particle, the higher its mass . ( The friction can also be thought of as the cause of the inertia of massive bodies .)
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